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Specific fluorescent derivatives of macromolecules. A fluorescence study of some specifically modified derivatives of chymotrypsin, trypsin and subtilisin.

The 5-dimethylaminonaphthalene-1-sulfonyl group was specifically introduced into the active site region of the serine proteinases: alpha-chymotrypsin, trypsin and subtilisin Carlsberg by the method of affinity-labeling. The resulting fluorescent derivatives were studied by a variety of fluorescence techniques and the results were correlated with structural data available on these enzymes from X-ray analysis. As model compounds for the Dns-proteinases, the absorption and fluorescence properties of Dns-amide and Dns-ethyl ester were studied in ethanol/water and p-dioxane/water mixtures. The fluorescence emission transtion energies and quantum yields were related to four commonly employed solvent-polarity scales. Best correlations for different solvents were obatined with the empirical "Z" and "Y" scales. From inspection of the fluorescence emission transition energies of the Dns group in the Dns-proteinases and comparision with the model compound studies it was possible to assign "Z" values for the apparent microenvironment polarities of the Dns group in the Dns-proteinases. The apparent polarities of the microenvironments of the Dns group in Dns-Ser 195-chymotrypsin (Dns-chymotrypsin (I)); (Dns-Phe-CH2)-His 57-chymotrypsin; (Dns-Lys-CH2)-His 46-trypsin; and Dns-Ser 221--subtilisin Carlsberg (Dns-subtilisin (I)) are in the range of 89.5-92.5 on the "Z" scale. The apparent microenvironment polarity of the Dns group in Dns-Ser 183-trypsin (Dns-trypsin (I)) appears to be below 76.7 on the "Z" scale. The Dns group in Dns-chymotrypsin (I) and (Dns-Phe-CH2)-His 57-chymotrypsin appears to be rigidly bound as evaluated by fluorescence polarization studies. The effect of 2H2O on the fluorescence emission quantum yields of Dns-amide and Dns-ethyl ester was examined. In both cases the ratios of quantum yields in 2H2O:ethanol (8:2) to quantum yields in H2O:ethanol (8:2) was about 1.8. The 2H2O effect upon the fluorescence emission quantum yields of the Dns group has been used to investigate solvent accessibility of this chromophore in the Dns-proteinases. Acessibility studies using 2H2O are very promising and have some definite advantages over other existing methods. Energy transfer between the Trp residues and the bound Dns group was investigated in the Dns-proteinases. The mean transfer distance calculated from the observed transfer efficiencies are 18.1 A, 19.7 A and 18.4 A for (Dns-Phe-CH2)-His 57-chymotrypsin, Dns-chymotrypsin (I) and (Dns-Lys-CH2)-His 46-trypsin, respectivly. From models built using X-ray crystallographic coordinates for the protein atoms, the mean distance of separation between the Trp residues and the bound Dns group for the same set of conjugates ar 18.6 A, 17.5 A and 17.5 A, respectively. Considering the inherent difficulties in energy transfer studies, the results are in excellent agreement with the X-ray data.

Chymotrypsin

Effect of phosphate ions on the fluorescence of tryptophan derivatives. Implications in fluorescence investigation of protein-nucleic acid complexes.

In order to test the ability of phosphate groups to quench the fluorescence of tryptophan in protein-nucleic acid complexes we have studied the effect of various phosphate ions on the fluorescence of tryptophan derivatives. Unsubstituted and monoalkyl monoanions (H2PO4- and CH3OPO3H-) quench the fluorescence of all investigated indole derivatives while the dimethyl anion (CH3O)2 PO2- does not. This suggests that quenching of tryptophan fluorescence by phosphate monoanions requires the presence of an acidic OH group and could be due to a proton transfer from the phosphate ion to the indole chromophore. Trianions (PO4 3-4) which are strong proton acceptors quench the fluorescence of all tryptophan derivatives except N(1)methyl tryptophan. This result strongly supports our proposal that quenching of tryptophan fluorescence by phosphate trianions occurs through deprotonation of the NH indole group. Bianions (HPO '4(7), and CH3O PO3 2-3) quench the fluorescence of several indole derivatives including N-acetyl tryptophanamide but have no effect on tryptophan or N(1)-methyl tryptophan. From our results we conclude that phosphate groups of nucleic acids are not able to quench the fluorescence of tryptophyl residues in protein-nucleic acid complexes except if an accessible residue is located near a phosphorylated polynucleotide chain end.

Nucleic Acids

Simultaneous use of retrograde fluorescent tracers and fluorescence histochemistry for convenient and precise mapping of monoaminergic projections and collateral arrangements in the CNS.

A procedure is described for the use of fluorescent retrograde tracers in conjunction with monamine fluorescence histochemistry for single or double labeling studies of the projections of identified catecholamine or indoleamine neurons in the CNS. A number of fluorescent tracers, including Evans Blue, bisbenzimide, DAPI, 'True Blue', 'Granular Blue' and propidium iodide, have been tested and characterized microspectrofluorometrically. Of these, 'True Blue', propidium iodide and Evans Blue were found to have the most suitable properties to be studied concomitant with the monoamine fluorphores. A combination of two of these tracers--'True Blue' fluorescing blue and propidium iodide or Evans Blue fluorescing orange to red--and the catecholamines and indoleamines fluorescing yellow-green and yellow to brownish yellow, respectively, makes possible simultaneous use of four different fluorescent markers in one and the same section. The present procedure has great practical advantages over available HRP techniques and should in modified form also be applicable to other types of transmitter-specific neuronal tracing based on immunocytochemistry or enzyme histochemistry.

Animals

Formaldehyde-induced fluorescence in the telencephalon and diencephalon of the eel (Anguilla anguilla l.). A fluorescence-microscopic and microspectrofluorometric investigation with special reference to the innervation of the pituitary.

In the telencephalon and diencephalon of the eel (Anguilla anguilla L.) formaldehyde-induced fluorescence was studied microscopically and microfluorometrically with special emphasis on the innervation of the pituitary. In the telencephalon fluorescent fibers contained predominantly noradrenaline fluorophores. Fluorescent nuclei could not be established. In the diencephalon fluorescent perikarya were found in: (1) the paraventricular organ (PVO), possessing either dopamine or, to a lesser extent, serotonin fluorophores; (2) the PVO-accompanying group, exhibiting spectral data resembling those of noradrenaline fluorophores; (3) the nucleus hypothalami anterior (NHA), a small paired group of catecholamine-containing cells posterior to the commissura transversa.--The nucleus lobi inferioris exhibited a high density of delicate, most probably dopamine-containing terminals, while fibers surrounding this nucleus contained noradrenaline fluorophores. A high density of fluorescent terminals containing dopamine and/or noradrenaline was found in the habenular complex. Fluorescent terminals in the pituitary contained fluorophores resembling either dopamine or noradrenaline. Fluorescent tracts entered the pituitary from different directions. A rostral, unpaired tract enters the neurointermediate lobe, as also verified experimentally. The rostral pars distalis receives two paired tracts, one from a rostral and one from a dorsal direction. The proximal pars distalis also receives two paired tracts, one from a dorsal and one from a posterior direction.

Anguilla

Quantitative fluorescence histochemistry of combined formaldehyde-chloral-induced fluorescence of amino-terminal tryptophyl-peptide in model experiments and in the pars intermedia of the rat hypophysis.

The relationship between the intensity of combined formaldehyde-chloral vapour-induced fluorescence and the concentration of amino-terminal tryptophyl-peptide in model experiments was found to be non-linear. At a certain concentration the intensity began to increase more slowly than the concentration, and when the concentration further increased the intensity even began to decrease. Based on the studies previously reported and on the above findings it seems that fluorescence induced by combined formaldehyde-chloral vapour, glyoxylic acid vapour and possibly also other combined formaldehyde and carbonyl compounds in the hypophyseal cells containing amino-terminal tryptophyl-peptides is quenched in normal conditions due to the high local concentration. Thus, small to moderate changes in the amounts of amino-terminal tryptophyl-peptides cannot be observed by measuring the fluorescence intensity. In tissue experiments the intensity of combined formaldehyde-chloral vapour-induced fluorescence in the rat pars intermedia was measured after reserpine treatment, which decreases the number of hormone storage granules as demonstrated electron microscopically. The fluorescence intensity measurements were combined with an estimation of the amounts of amino-terminal tryptophyl-peptides extracted from hypophyses and separated in thin-layer chromatography, and subsequently demonstrated by combined formaldehyde-chloral vapour and a protein stain (amido black). Reserpine treatment decreased the fluorescence intensity in the pars intermedia and in thin-layer chromatography, and the staining of the fluorescent band with amido black was also decreased. Amino-terminal tryptophyl-peptides appeared to be depleted from the pars intermedia cells together with endorphins and other hormones of the ACTH/MSH cells containing tryptophan.

Animals

Fluorescence and the structure of proteins. XXI. Fluorescence of aminotyrosyl residues in peptides and helical proteins.

1. Five peptides containing tyrosine were converted to the 3-aminotyrosyl peptides by nitration with tetranitromethane and subseuqent reduction of the nitro groups to amino groups. The fluorescence of these aminotyrosyl residues was found to be quite similar to that of 3-aminotyrosine and it is concluded that the fluorescence is not sensitive to incorporation of the amino acid into the peptide chain. 2. Fluorescence of 3-aminotyrosine derivatives was sensitive, however, to the nature of the solvent; as the dielectric constant decreased, fluorescence was enhanced ten fold and the emission maximum shifted from the 350-370 nm value in aqueous solution to 320 nm. It is predicted that similar differences might be expected for exposed and buried aminotyrosyl residues in a protein. 3. Exposed tyrosyl residues on the helical protein tropomyosin and a helical segment of paramyosin were aminated in part (39% and 34% of the total tyrosyl residues, respectively). The fluorescence of the aminated tyrosyl residues on these proteins was similar to that of the aminotyrosyl peptides in an aqueous medium. Although the fluorescence efficiency of an aminotyrosyl residue was much lower than that of a tyrosyl residue, it was easy to distinguish the fluorescence of the aminotyrosyl residues (350-355 nm) on the protein from that arising from unmodified tyrosyl residues (305 nm).

Binding Sites

Quantitative fluorescence studies of the effects of catecholamines and hydrocortisone on endogenous amine levels in neurones and small intensely fluorescent cells of embryonic chick sympathetic ganglia in vivo and in vitro.

Chick embryo lumbar sympathetic ganglia (11 day) cultured for three days and uncultured (in vivo) ganglia of comparable age were freeze-dried and processed by the formaldehyde-induced fluorescence technique for the demonstration of biogenic monoamines. The catecholamine levels within principal neurone cell bodies and small intensely fluorescent (SIF) cells were then examined in plastic sections of the in vivo and in vitro ganglia by a quantitative fluorescence method under various experimental conditions. Culture of ganglia for three days in the presence of hydrocortisone acetate (10 mug/ml) resulted in an increased SIF cells fluorescence (P less than 0.001 compared to control) and a green to yellow colour shift in the fluorophore of SIF cells. No detectable alteration in the fluorescence level of neurones was observed. When neurones after three days in culture were incubated for 1 h in exogenous catecholamines, a significant increase in fluorescence levels (interpreted as an increase in catecholamine content) occurred with noradrenaline (2 X 10(-6) M; 2 X 10(-5) M). SIF cells in ganglia removed directly from 14-day old chicks similarly took up noradrenaline and dopamine, and also adrenaline (2 X 10(-5) M). Morphological results are presented which indicate that the cellular appearances and architecture of cultured ganglion explants are very similar to those in comparable ganglia in vivo.

Animals

Fluorescent probes for antibody active sites. I. Production of antibodies specific to the N-methyl-2-anilinonaphthalene-6-sulfonyl group in rabbits and some fluorescent properties of the hapten bound to the antibodies.

1. Rabbits were immunized with N-methyl-2-anilinonaphthalene-6-sulfonyl (MANS) bovine serum albumin (MANS-BSA) prepared by the reaction of bovine serum albumin with N-methyl-2-anilinonaphthalene-6-sulfonyl chloride to obtain IgG fraction containing anti-MANS antibodies. 2. Both N-methyl-2-anilinonaphthalene-6-sulfonate (MANSate) and N-methyl-2-anilinonaphthalene-6-sulfonamide (MANSamide), which are virtually non-fluorescent in aqueous solution, became strongly fluorescent, with a blue shift of about 100 nm, when they were specifically bound to the antibodies against the hapten group contained in the IgG fractions. 3. IgG fractions were obtained from five immunized rabbits at intervals after the primary immunization. The fluorescence characteristics of the hepten were carefully examined with preparations of IgG fraction differing in source and time of bleeding. One of the rabbits showed a very interesting immune response. The rabbit produced two groups of anti-MANS antibodies which were significantly different in their effect on the fluorescence properties of the hapten group. One of the groups was exclusively produced at the early stage in the immune response. The other group appeared at the late stage. It is suggested that the two groups differ as regards the structure of the hepten combining sites. 4. The above findings indicate that the MANS group can be successfully used as a hapten with useful properties as a fluorescent probe.

Anilino Naphthalenesulfonates

The influence of temperature and urea on intrinsic fluorescence of Streptomyces subtilisin inhibitor. A study by fluorescence polarization and quenching.

Intrinsic fluorescence of new microbial protease inhibitor, Streptomyces subtilisin inhibitor was studied by observing fluorescence polarization degree and lifetime in the temperature range 25-81 degrees C. Striking thermal changes in these fluorescence properties of tryptophan residues were observed. The apparent molecular volumes for tryptophan and tyrosine residues in the native form were determined to be 89 and 75 A3, respectively. The fluorescence quenching by Br- or Cs+ was investigated to obtain a microenvironmental information around tryptophan residues both in the native and denatured form. Cs+ quenches the fluorescence slightly stronger than Br-, implying that there is not any distinctive electrostatic interaction between tryptophan residues and their neighborhood.

Bacterial Proteins

Fluorescence-detected magnetic circular dichroism of fluorescent and nonfluorescent molecules.

We have modified a spectrometer for the measurement of fluorescence-detected magnetic (and natural) circular dichroism (FDMCD). The instrument can be operated either in a direct mode in which the average and polarization-induced differential fluorescent intensities are recorded separately or in a mode which records their ratio. We have measured the FDMCD of tryptophan, which is itself fluorescent. With the aid of an added fluorescent molecule we also measured the FDMCD of Fe(III) cytochrome c, which is nonfluorescent. In both cases, the FDMCD agreed with the conventional transmission-detected magnetic circular dichroism within experimental uncertainty. The FDMCD of both fluorescent and nonfluorescent molecules is potentially a useful technique for investigating optically dense materials and biological molecules in their native environments and systems in which there is inter- or intramolecular energy transfer.

Circular Dichroism

[Relation between fluorescence and circular dichroism of the complex of the fluorescence probe 4-dimethylaminochalcone with serum albumin].

The fluorescence probe(4-dimethylaminochalcone; DMH) was noncovalently linked to human serum albumin (HSA). The variation of pH was due to serum albumin structural changes, which was determined in terms of DMH and HSA fluorescence and CD spectra. Considerable changes of fluorescence and CD spectra were observed at pH 8 and 10, where there is ionization of two more recently titrated tyrosin residues. It is assumed that these two tyrosine residues are in binding region and quench the fluorescence of DMH between pH 4 to 8. Quenching disappears if these residues are ionized (pH greater than 8) or if the protein undergoes the N -F transition (pH less than 4).

Chalcone

Length heteromorphisms of fluorescent (f) and non-fluorescent (nf) segments of human Y chromosome: classification, frequencies, and incidence in normal Caucasians.

Sixty normal male Caucasians were selected to study the length of the Y chromosome. QFQ banding was performed. Chromosomes 19 and 20 (F) and Y were measured directly from the film. Y/F, f/F, and nf/F indices (f = fluorescent; nf = non-fluorescent segment) were determined. The length of the Y chromosome was classified into 5 groups; very small, small, average, large, and very large with Y/F indices of less than 0.8, 0.81--0.94, 0.95--1.09, 1.1--1.23, and greater than 1.23, respectively. The frequencies of Y/F indices for these groups were 0 (0%), 9 (15.0%), 40 (66.7%), 8 (13.3%), and 3 (5.0%), respectively. The most frequent class was 0.95--1.09 and was defined as the 'average' Y/F index for the human Y chromosome. The variation in the total length of the Y chromosome was accounted for by variations in the length of the non-fluorescent as well as the fluorescent segments. No relation between f and nf segments was observed. The mean Y/F, f/F, and nf/F indices were 1.022, 0.441, and 0.574, respectively.

Adult

Fluorescent colloidal gold: a cytochemical marker for fluorescent and electron microscopy.

The gold method was further developed for fluorescent microscopy. Gold granules (12 nm in size) were labelled with rhodamine conjugates of Concanavalin A and avidin. The fluorescent markers were used to mark cell wall mannan on the yeast Saccharomyces cerevisiae either by the one-step, or by the two-step method via a biotinyl derivative of ConA. By fluorescence or transmission electron microscopy, the two-step method was found to achieve a higher density of marking.

Avidin

Fluorescent labeling of hormone receptors in viable cells: preparation and properties of highly fluorescent derivatives of epidermal growth factor and insulin.

Highly fluorescent analogs of insulin and epidermal growth factor were prepared by the covalent attachment of these peptides to alpha-lactalbumin molecules that were highly substituted (i.e., seven to one) with rhodamine molecules. The alpha-lactalbumin was specifically linked to the lysine residue of insulin or to the alpha-amino group of epidermal growth factor. The insulin derivative retained 1.15% of its potency in stimulating glucose oxidation in fat cells but retained about 8.3% of its binding affinity toward receptors. The epidermal growth factor derivative was completely active in binding to fibroblast receptors and 40% as potent as the native hormone in stimulating DNA synthesis. These highly fluorescent derivatives were suitable for the specific visual labeling of receptor sites in viable cells and for measuring the lateral mobilities of the receptor-hormone complexes by fluorescent photobleaching recovery techniques. By these methods it was shown that the hormone-receptor complexes can move laterally in the plane of the plasma membrane with a diffusion coefficient of (3-5) X 10(-10) cm2/sec.

Adipose Tissue

Use of isolated nuclei in the indirect fluorescent-antibody test for human cytomegalovirus infection: comparison with microneutralization, anticomplement, and conventional indirect fluorescent-antibody assays.

Use of an antigen consisting of purified isolated nuclei from a mixture of human cytomegalovirus-infected and uninfected fibroblasts in a 2:1 ratio is a simple and reliable method for eliminating nonspecific fluorescence associated with the presence of Fc-immunoglobulin G receptors in the cytoplasm of infected cells. The specificity obtained with this antigen on 100 normal human sera was 99, 100, and 98% when compared with microneutralization, anticomplement immunofluorescence, and conventional indirect fluorescent-antibody assays, respectively. Also, 95% of the antibody titers obtained with the nuclear antigen had a perfect correlation with or were within a fourfold-dilution difference of the antibody levels obtained by anticomplement immunofluorescence and the conventional indirect fluorescent-antibody test.

Antibodies, Viral

Solvent perturbation of the fluorescence of fluorescein bound to specific antibody. Fluorescence quenching of the bound fluorophore by iodide.

Differential accessibility of liganded, high affinity rabbit anti-fluorescyl IgG antibody combining sites to the aqueous milieu has been investigated by solvent perturbation of the extrinsic fluorescence of bound fluorophore. Iodide, a dynamic quencher of fluorescein, was selected for use in these studies after examination of a number of water-soluble fluorescence quenchers. Quenching of antibody-bound fluorophore by iodide was measured with a number of liganded anti-fluorescyl IgG preparations, demonstrating partial solvent exposure of the fluorophore as well as heterogeneity of the high affinity antibody populations. Fluorescence quenching, lifetime, and absorption spectroscopy provided evidence that the antibody-bound fluorophore quenched by iodide interacted with it directly and that anomalous binding of the anion to the surface of the protein, resulting in ground state perturbations of the immunoglobulin, could not explain the observed results.

Animals

Extrinsic signals for monitoring the association reaction of proteins as introduced by fluorescent and non-fluorescent labels.

Two known dansyl labels (I, II) and 5-[2-(iodoacetamido)ethylamino]-1-naphthalene-sulfonic acid (III) and three new azo-dyes (IV - VI) were covalently attached to alpha-chymotrypsin and to basic pancreatic trypsin inhibitor by four different reactive groups. In order to protect the contact region of the proteins the complex of the two proteins was labeled. Advantage was taken of the fact that a group which is buried in the complex reacts about (see article) times slower than a group which is always exposed (K = dissociation equilibrium constant, [C] = concentration of the complex). The complex was dissociated at pH 3 and the labeled proteins were isolated by column chromatography. They were fully active. The dansyl label was immobilized when introduced by dansyl chloride but highly mobile when attached via the longer imidoester group (II). Changes of absorption and of fluorescence which occur when differently labeled reaction partners recombine were studied. Changes in absorption (up to 18%) were mainly due to interactions of the label of one protein with the other protein. Fluorescence changes of up to 480% could be obtained. They were interpreted in terms of a Förster type energy transfer between donor and acceptor labels and changes of absorption and quantum yield due to interactions of the labels with the proteins. The kinetic constants of complex formation are not seriously altered by the labels (Bösterling, B & Engel, J. (1976) this J. 357, 1297-1307, succeeding). It is concluded that the labeling technique may be of general value for kinetic and equilibrium studies of protein associations.

Affinity Labels